16 citations · 35 across the 13 of their papers we have counts for
15 papers
Impulsive Hydrodynamic Exfoliation into Monolayer Graphene and Nanofragments by Transonic Flow Focusing
A. Ponce-Torres, A. Rubio-González, J. M. Montanero +2
We propose using Transonic Flow Focusing (TFF) to produce 2D and 0D nanomaterials. This technique focuses liquid suspensions into high-speed micrometer-scale jets, combining extrem…
Pressure shifts in pulsatile shear: A microfluidic method to probe the normal stress response of complex fluids
T. Rodrigues, F. J. Galindo-Rosales, L. Campo-Deaño
A microfluidic approach to probing the first normal stress difference from single-point pressure measurements in transient shear flows is presented. Using an original experimental…
Magnetorheological Characterization of Blood Analogues Seeded with Paramagnetic Particles
R. Rodrigues, F. J. Galindo-Rosales, L. Campo-Deaño
Magnetic particle under external fields can be useful in various medical applications, gaining access to the whole body if deployed in the bloodstream. Localised drug delivery, hae…
Effects of non-parallelism on standard and magnetorheological measurements
R. Rodrigues, F. J. Galindo-Rosales, L. Campo-Deaño
Aiming towards the magnetorheological characterisation of whole human blood, we evaluated the suitability of our experimental setup for steady shear measurements with low-viscosity…
Characterization of low-viscosity electrorheological fluids: Technical Issues and Challenges
Pedro. C. Rijo, Francisco J. Galindo-Rosales
The electrorheological (ER) characterization of low-viscosity fluids is paramount for producing micro- and nanoscale products through electrohydrodynamic (EHD) techniques, such as…
Rheological behavior of molybdenum disulfide (MoS2) inks under electric fields: influence of concentration and voltage
Pedro C Rijo, Francisco J. Galindo-Rosales
This work provides a complete rheological characterization of molybdenum disulfide (MoS2) inks in the presence of electric fields. Several concentrations of MoS2 are studied and di…